• Title/Summary/Keyword: Creative Problem-Solving Skills

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An Instructional Design for PBL-based English Classes in Elementary Schools (초등학교에서 PBL 기반 영어 수업을 위한 학습 모형 설계)

  • Park, In-Hwa
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.3
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    • pp.564-568
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    • 2020
  • Problem-based learning (PBL) is applied to various subjects for the sake of learners' creative thinking, problem-solving skills, presentation skills, confidence, self-directed learning, cooperation, and for the communication skills required in a rapidly changing society. Among them, the English language-an official language-is invested in 2.3 times more than other subjects, according to the English education company Yoon's Teacher. Therefore, PBL is an important learning method. However, the reality is that teacher-centered instruction, acquiring knowledge of the best answers only, and traditional evaluations are the main subjects. In order to supplement these weak points, this study designed a learning model for English subjects based on Barrows & Myers (2002) and the analyze, design, develop, implement, and evaluate (ADDIE) model. As a result of a PBL English class based on the ADDIE model, the learners were able to improve their presentation skills by 86%, their interest in learning by 86%, their understanding of learning by 86%, and cooperation by 100%. As such, studies on designing the learning model should be carried out continuously to achieve the purpose of 21st century English education, which is to improve learners' communication skills and information processing skills.

Development and application of SW fusion safety education program applying Novel Engineering (Novel Engineering을 적용한 SW융합 안전교육 프로그램 개발 및 적용)

  • Hong, Ji-Yeon
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.23 no.2
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    • pp.193-200
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    • 2019
  • The 2015 revised curriculum aims to cultivate a 'creative fusion talent' capable of creating new knowledge and fusing various knowledge to create new value. Therefore, it is strengthening reading education to raise humanistic imagination and software education to promote scientific creativity. In addition, we have created [Safe Living] textbooks based on experiential activities as a way to strengthen safety education that is becoming a social issue. And we use it to conduct safety education at creative activity time. Novel Engineering believes that it can develop thinking skills in the process of reading books and finding and solving problems in life in them. Therefore, in this study, we will develop software education programs for safety education that are applied with Novel Engineering and apply them to actual classes to verify the educational effectiveness of students' creative problem solving skills and safety education.

An Importance and Performance Analysis of Learning Competencies Perceived by Medical Students (의과대학생의 학습역량에 대한 중요도와 실행도 분석)

  • Hyunjung Ju
    • The Journal of the Convergence on Culture Technology
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    • v.10 no.6
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    • pp.81-90
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    • 2024
  • This study aimed to identify the educational needs for learning competencies by analyzing the differences between perceived importance and performance among medical students. A survey was conducted with 90 medical students, focusing on five learning competencies: collaboration, communication, leadership, creative thinking, critical thinking and problem-solving skills. Paired sample t-tests, importance-performance analysis (IPA), and Borich needs analysis were utilized. The findings revealed that among the five competencies, critical thinking and problem-solving skills showed the highest levels in both importance and performance. Except for creative thinking, the levels of importance were significantly higher than the actual levels of performance for the other four learning competencies. In addition, communication skills were identified as the most critical competency for improvement, with speaking skills in communication showing the most urgent need for development and support. This study can provide suggestions for developing instructional methods or programs to enhance medical students' learning competencies.

Problem Development for PBL-based English Science Classes in Elementary Schools (초등학교에서 PBL 기반 영어과학수업을 위한 문제 개발 연구)

  • Park, In-Hwa
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.4
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    • pp.33-38
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    • 2020
  • Problem development is important to Problem-Based Learning (PBL) and is key to the creativity and problem-solving skills of successful learners. The purpose of this study is to have PBL classes that effectively materialize problem development stages, and to develop learning using problems suitable for elementary school English Science classes. In this study, the steps for developing the problems are identifying educational content, identifying learners' characteristics, discovering problems, setting up roles and situations, and writing problems. Based on these steps, five PBL problems were developed by selecting a subject suitable for the PBL method of an English Science class, which is one of the English curriculums in elementary schools. Creative thinking, problem-solving skills, presentation skills, confidence, self-directed learning, cooperation, and communication skills are required in the rapidly changing society of the 21st century, rather than teacher-centered instruction, acquiring knowledge for correct answers only, and uniform assessments, which still take place in many English education settings. Therefore, developing problems suitable for PBL learning should be continuously studied.

A Study on Evaluation Methods for Implementing PBL in Engineering School (공과대학에서 PBL 적용을 위한 평가방법 연구)

  • Lee, Keunsoo
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.5
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    • pp.605-610
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    • 2018
  • The purpose of this paper is to develop evaluation methods in order to apply effective problem-based learning (PBL). To observe the effectiveness of a PBL system on learners and to comprehend the learning process of a PBL application, analysis of reflective journals and an evaluation questionnaire completed by participants (n=68) were used. The participants of the study were recruited from Hankyong National University students who undertook first-year Creative Engineering Design. A total of four problems for the PBL-based lectures were designed and applied to 12 weeks of PBL lectures. The participants completed reflective journals upon completion of each PBL problem-based activity; upon completion of the last PBL problem, participants completed and submitted a PBL system class-evaluation questionnaire. Also the participants completed an evaluation questionnaire at each step of the instructional procedures for each PBL problem-based activity. The findings of the research show that the participants increased their comprehension of PBL systems, their understanding of lecture content and of cooperative learning, and improved their self-reflection, authentic experience, creative problem-solving skills, communication skills, documentation skills, presentation skills, observational skills, and evaluation skills. The participants described how learning through PBL increased their confidence, satisfaction, and sense of achievement, compared to the previous semester.

Development of Junior high School Competition Program for Creative Problem Solving on the basis of Technological Hands-on Activities (중학교에서의 기술적 체험활동에 터한 창의적 문제해결 경진대회 프로그램 개발)

  • Kim, Darani;Yi, San-bong
    • 대한공업교육학회지
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    • v.36 no.1
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    • pp.149-166
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    • 2011
  • The purpose of this study was to develop a creative problem-solving competition program in order to provide an opportunity for junior high schoolers to solve problems on the basis of technological hands-on activities by deploying their creative problem-solving skills and to foster their cooperative and challenging spirits by tackling the given problems in group. Relevant literature and competition programs were analyzed to develop a junior high school competition program for creative problem solving on the basis of technological hands-on activities. This study was implemented in three stages: preparing, developing and applying. In the preparation stage, the content structure of technology and the fields of corresponding hands-on activities were investigated, and creativity theories were analyzed. Besides, domestic and foreign creativity-related competition programs were checked. In the development stage, an overview of the nature, object, question making and evaluation of a competition program for creative problem solving on the basis of technological hands-on activities was presented, and a program was developed, which consisted of three stages: planning, operating and evaluating. In the application stage, every student in a selected junior high school participated in the competition program. The findings of the study were as follows: First, the competition program developed in this study intended to offer a chance for every junior high schooler to solve problems on the basis of technological hands-on activities to display their creative problem-solving skills. Second, the program was designed to include planning, operating and evaluation stages, after the nature and object of the competition program and in which way question making and evaluation should be fulfilled were determined. Third, the competition program dealt with five areas according to the content structure of technology: manufacturing technology, construction technology, transportation technology, communication technology and biotechnology. And questions for each area and student worksheets were developed. Fourth, the program was utilized in a junior high school to give an example.

An educational effect analysis of a short-term TRIZ program in industry-university cooperation (산학연계 트리즈(TRIZ) 단기 프로그램의 교육적 효과 분석)

  • Han, Jiyoung;Kim, Sung-Hui
    • Journal of Engineering Education Research
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    • v.19 no.2
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    • pp.26-33
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    • 2016
  • A camp program where the theory of inventive problem solving TRIZ is applied to real problems of the industry was developed and taught at a five-day seminar apart from the standard curriculum at a university D in Gyeonggido. This study focuses on the educational effect that the TRIZ method has on the engineering students when their creative problem solving skills are required to solve industry problems on their own with the knowledge from their courses. For five days, the students were educated about TRIZ and assigned a real industry problem "Removal of friction caused by bubble formation in water heating pipelines". By applying TRIZ to the problem, the students developed an "Air removing Air Arrester" which received the evaluation, "with understanding the system architecture and the task objective causes and formation of the problem could be handled which directly helps the company's R&D". In this case, TRIZ offers the students a guideline and knowledge on how to approach problems and as a result the students provided a practical solution. During the process, the TRIZ method instilled confidence in the students and proved to be a motivation. It becomes obvious that this short-term program has a positive effect on students' way of thinking creatively and increasing their problem-solving abilities.

Development of the Elementary Science Curriculum to Enhance Creative Problem-Solving Abilities: Theme Based Construction of Contents (창의적 문제해결력 신장을 위한 과학교육과정 개발 연구-주제 중심의 초등과학교육과정 내용구성-)

  • Cho, Youn-Soon;Choi, Kyung-Hee;Suh, Ye-Won
    • Journal of The Korean Association For Science Education
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    • v.18 no.4
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    • pp.527-537
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    • 1998
  • This article is a part of a research on the elementary science curriculum development to enhance creative problem-solving abilities. The components of the curriculum have been identified as 'scientific knowledge', 'process skills' & 'divergent/critical thinking'. Among these components, construction of the scientific knowledge that enables creative problem-solving abilities has been selected as an intensive research topic for the purpose of the present research. To avoid or to prevent the knowledge learned from separate facts and concepts, five themes have been selected so as to incorporate with all three areas of the elementary science curriculum, i.e., physical science, earth science and life science. The five themes are, 'structure', 'change', 'interaction', 'energy' and 'stability'. The contents of elementary science, which have been selected from the 3rd, 6th and 7th National Elementary Science curriculum, were reconstructed based on the five themes given above. The results of reconstruction are presented in the form of matrix, such that the vertical axis represents how the concepts are related within each domain of science, while the horizontal axis shows how the concepts are interconnected between domains of science. Therefore, based upon the five themes, individual or separate knowledge can be put into more unified knowledge so that contribution of knowledge transfer to new ones can be expected for leaners who will be creative in problem-solving. The process and products of the curriculum development as well as the background of the present research are described and discussed in detail.

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Integrated Program Development for Creativity and Emotion of Elementary Lower Grade Students (초등 저학년 학생의 창의·정서 함양을 위한 통합 프로그램 개발)

  • Lew, Kyoung-Hoon
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.5
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    • pp.551-558
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    • 2020
  • The purpose of this study was to develop an integrated program to improve the creative and emotional ability of lower grade students. This program aimed to cultivate creative thinking and creative personality for problem solving, and to learn how to interact positively with others by developing emotional expression and control. Creative thinking ability includes fluency, flexibility, originality, elaboration, imagination, and sensitivity. Creative personality includes curiosity, sensitivity, adventure, humor, independence, task commitment, and problem solving leadership. We selected 6 creative thinking skills such as mind-map and brainstorming. Emotional factors consist of self /other understanding, control of emotional effect, self-expression emotionally, and respect for others for cooperation. The integrated program consisted of 12 themes, and the class time was set to 40 minutes, which is the same as the elementary curriculum. The program was conducted by a teacher with 10 years' experience.

The Development and Application of STEAM Education Program based on Systems Thinking for High School Students (고등학생을 위한 시스템 사고 기반의 융합인재교육 프로그램 개발 및 적용 효과)

  • Jeon, Jaedon;Lee, Hyonyong
    • Journal of The Korean Association For Science Education
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    • v.35 no.6
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    • pp.1007-1018
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    • 2015
  • In the 21st century, in a Knowledge-Based Information Society, systems thinking is a very important human resources skill in science and technology, which is required in STEAM education in order to understand and solve complex problems. The purposes of this study are: (1) to develop a STEAM education program based on systems thinking; (2) to investigate the effects of the program on students' systems thinking. The systems thinking-based STEAM education program was developed on the basis of 'ADBAS' model (Park & Lee, 2013), and focused on the theme of watermill. A total of 60 high school students participated in this study. The results of this study showed that quantitatively as well as qualitatively, systems thinking skills improved after the treatment. In conclusion, the program we developed in this study can contribute in improving high school students' systems thinking skills and creative problem-solving abilities. The findings of this study may provide useful insights into cultivating human resources with systems thinking skills and creative problem-solving abilities.